Google Search

Search

Already a Member ?

Chemicals (Organic, Inorganic, Industrial) Projects

The chemical industry is a highly versatile segment in the overall industrial economy of India. It is one of the oldest domestic industries in India, contributing significantly to both the industrial and economic growth. Over the past ten years, there have been breath-taking changes in the chemical industry, especially in India.

The chemical industry has been linked with almost every other industrial activities starting from food processing to rubber, leather, and textile processing.  There is, in fact, hardly any segment where chemicals do not feature. 

The industry is broadly segmented into four major categories-Inorganic Chemicals, Organic Chemicals, petrochemicals based specialities, and agro oriented chemicals and a feasibility study of chemical industrial projects.

The chemical industry currently produces nearly 70,000 commercial products, ranging from cosmetics and toiletries, to plastics and pesticides.Indian chemical companies have prominence in the global market. Global chemical companies present in India have benefited from many opportunities as a result of favorable factors such as skilled workers, low manufacturing cost and strong domestic demand.

The Agro-oriented chemicals like guar gum, starch, citric acid, sorbitol, yeast and others, valued at over Rs 1450 billion, apart from contributing 14% of the industrial sector’s contribution to GDP, industrial chemicals have a 10% share in the overall exports of India. It is spread over some 2000 units, mostly in the small scale sector. Nonetheless, over a third of the market is controlled by top 10 players.

Petrochemicals, pharmaceuticals, synthetic fibres, fertilizers and pesticide, paints and dyestuffs constitute over 85% of the market. The remaining 15% comprises a wide range of chemical intermediate and industrial or speciality chemicals which have a market of over Rs 230 billion (including imports of about Rs 15 billion).

The chemical industry remains concentrated in the western region, with a near 48% share of investment. In the western region, Gujarat makes the largest contribution to the chemical industry’s production activity. The Indian market for petrochemicals will increase four times in the next ten years. It will witness a sustained double-digit growth rate in the coming years.

India’s speciality chemicals market represents around 24% of the total chemical industry Exports of speciality chemicals from India and are poised to grow from US$4 billion in 2007 to US$13 billion in 2013, representing a growth rate of 22%.The speciality chemicals industry in India is expected to grow at a growth rate of 15%, almost double the growth of the global speciality chemicals industry.

With India being an emerging economy with high growth rates and a strong domestic demand the chemical industry in India will be one of the most booming industries in the coming years.

How to determine Feasibility Study for Industrial Projects?

The feasibility study is the study of the market’s pivotal point to determine the viability of an industrial project. It explains industrial based projects, external influencers such as legal obligations, and required investment and expected returns. The study helps in the collection of information related to the industrial plan and economy in general to determine the probable performance of the project.

Here are the primary points in determining the feasibility of chemical plant projects.

1. Target Market Research

Project reports on the market are the key factors to consider before entering into any project. The project owners have to conduct a detailed survey about the target market to determine the potential profit he is likely to get from the project.

Also, market research helps in identifying the availability of raw material, perfect product design, and product prices through understanding consumer behaviors. On market research, the project owner tends to conduct surveys pertain the product, supply and demand, product price, competition, and market distribution.

2. Technical and Procedural details

A technical study regards defining industry concerns and economies of scale and the sources of technology. The study covers the target location of the project, machinery and other assets required to run the industry, waste treatment, sources of raw materials, and participation agreement, which is licensing, taxation and other legal contracts.

3. Costs and Financial Preparedness

It regards the collection of financial requirements, analysis, and estimation of investment and operation cost of a project.

Feasibility study for a chemical industrial project influences the creation of a business plan for a chemical company, which is vital in the implementation ofchemical business ideas.

Products used in Inorganic Chemicals Manufacturing Process

The chemicals produced in the Inorganic Chemicals Manufacturing Process are intermediate products that are used as inputs in industrial and manufacturing processes. They are those that are not carbon-based; that is, they are minerals that lack carbon atoms, unlike organic compounds.

The inorganic chemicals industry consists of two segments–basic inorganic chemicals such as potassium, nitrogen and phosphorus products, sulfates, alkalis, among others, and specialty chemicals such as catalysts, pigments, and fuels.

1. Basic Inorganic Chemicals

They are chemicals that manufacture inorganic products such as plastics and fertilizers such as potassium nitrates. They are produced in large quantities. The basic inorganic compound industry is characterized by its high degree of fragmentation across areas with a large volume of production.

They also have a high energy cost, low import tariffs, and infrastructural impediments, which significantly affects their competitiveness.

2. Specialty Inorganic Chemicals (SIC)

They are chemicals with diverse and complex production processes. They are manufactured through a combination of simple process steps such as chemical reaction processes, and equipment, which are modified to create the desired specialty product.

Specialty inorganic chemicals are characterized by the quality and purity of raw materials. The characteristics are the key factors influencing the environmental impacts of products produced as there are opportunities to reuse or recycle these products.

 

 

Reasons for buying our reports:

This report helps you to identify a profitable project for investing or diversifying into by throwing light to crucial areas like industry size, market potential of the product and reasons for investing in the product

This report provides vital information on the product like its characteristics and segmentation

This report helps you market and place the product correctly by identifying the target customer group of the product 

This report helps you understand the viability of the project by disclosing details like machinery required, project costs and snapshot of other project financials

The report provides a glimpse of government regulations applicable on the industry

The report provides forecasts of key parameters which helps to anticipate the industry performance and make sound business decisions.

 

Our Approach:

Our research reports broadly cover Indian markets, present analysis, outlook and forecast for a period of five years.

The market forecasts are developed on the basis of secondary research and are cross-validated through interactions with the industry players

We use reliable sources of information and databases. And information from such sources is processed by us and included in the report


We can provide you detailed project reports on the following topics. Please select the projects of your interests.

Each detailed project reports cover all the aspects of business, from analysing the market, confirming availability of various necessities such as plant & machinery, raw materials to forecasting the financial requirements. The scope of the report includes assessing market potential, negotiating with collaborators, investment decision making, corporate diversification planning etc. in a very planned manner by formulating detailed manufacturing techniques and forecasting financial aspects by estimating the cost of raw material, formulating the cash flow statement, projecting the balance sheet etc.

We also offer self-contained Pre-Investment and Pre-Feasibility Studies, Market Surveys and Studies, Preparation of Techno-Economic Feasibility Reports, Identification and Selection of Plant and Machinery, Manufacturing Process and or Equipment required, General Guidance, Technical and Commercial Counseling for setting up new industrial projects on the following topics.

Many of the engineers, project consultant & industrial consultancy firms in India and worldwide use our project reports as one of the input in doing their analysis.

We can modify the project capacity and project cost as per your requirement.
We can also prepare project report on any subject as per your requirement.

Page 62 of 76 | Total 755 projects in this category
« Previous   Page 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 .... 62 75 76   Next »

Add multiple items to inquiry
Select the items and then press Add to inquiry button

Select all | Clear all Sort by

Silica from Rice Husk Ash

Rice milling generates a byproduct known as husk. This surrounds the paddy grain. During milling of paddy about 78% of weight is received as rice, broken rice and bran. Rest 22% of the weight of paddy is received as husk. India is a major rice producing country and the husk generated during milling is mostly used as a fuel in the boilers for processing paddy, producing energy through direct combustion and/or by gasification. This RHA is a great environment threat causing damage to the land and the surrounding area in which it is dumped. The India silica market size was valued at USD 46.8 million in 2017. It is likely to post a CAGR of 6.5% during the forecast period. Strong product demand in the food industry, owing to its anti-caking and super absorption properties, has helped the market gain momentum over the past few years. Silica is used extensively in coatings, wherein the product acts as anti-settling, matting, thickening, and thixotropic agent. Few Indian major players are as under: • 20 Microns Ltd. • Bharucha Stone & Sand Works Pvt. Ltd. • Cabot Sanmar Ltd. • Chettinad Morimura Semiconductor Material Pvt. Ltd. • Insilco Ltd. • Integrated Glass Materials Ltd.
Plant capacity: Silica: 1,500 MT per annum Activated Carbon (by product):420 MT per annum Sodium Carbonate (by product):630 MT per annumPlant & machinery: 489 Lakh
Working capital: -T.C.I: Cost of Project:920 Lakh
Return: 25.00%Break even: 52.00%
Add to Inquiry Add to Inquiry Basket

Recovery of Ferric oxide (Fe2O3) & Titanium Dioxide (TiO2) from Bauxite Processing Waste

Recovery of Ferric oxide (Fe2O3) & Titanium Dioxide (TiO2) from Bauxite Processing Waste. Wealth from Waste Ferric oxide (Fe? O?) is an inorganic compound also known as hematite. Ferric oxide is used in the iron industry in the manufacturing of alloys and steel. The Food and Drug Administration (FDA) has approved ferric oxide pigment for use in cosmetics. Moreover, ferric oxide granules are used in the form of filtration media for removing phosphates in saltwater aquariums. The global titanium dioxide market size was valued at USD 15.76 billion in 2018 and is expected to witness a CAGR of 8.7% from 2019 to 2025 In addition, high demand for anti-corrosive architectural coatings in the pigments has increased the demand for titanium dioxide. FOR Fe2O3 ? In iron industries for producing steel and alloys ? Ferric oxide powder, also called jeweler’s rouge, is used for polishing lenses and metallic jewelry ? Its granular form is used as a filtration media for pulling out phosphates in saltwater aquariums ? As FDA-approved Pigment Brown 6 and Pigment Red 101, for use in cosmetics. ? In biomedical applications, because its nanoparticles are non-toxic and biocompatible Recovery of Fe2O3 Fe2O3 is another material in red mud that has attracted a number of researchers. Until now, there are three means to recover iron from red mud: smelting, solid-state reduction and magnetic separation. In smelting process, red mud is charged into blast furnace or rotary furnace with a reducing agent. Then, iron oxide in red mud is reduced to generate pig iron that can be used in steel production. However, smelting process has some demerits. High energy and capital costs are associated with blast furnace (BF) operation because scale of operation is high. Red mud must be mixed with some good-grade iron ore to maintain the minimum grade of the charge to BF. In addition, titanium reacts with other constituents of the slag to form multiple oxides that are difficult to leach. In the solid-state reduction process, the mud is mixed with a reducing agent or contacted with a reducing gas to produce metallic iron. The product can be an input either in a steel-making furnace or a conventional blast furnace. Compared to smelting process, solid-state reduction process consumes less energy. But, it also has some disadvantages. First, the metallic iron produced is quite difficult to separate from the rest of product. So, it is easily polluted by gangue materials. Second, the product is in a very fine form. The recovery rate of Fe2O3 was 45% (weight percent). Another means is to convert hematite or goethite in red mud to magnetite firstly, which is followed with magnetic separation. Obviously, this process is more complex than magnetic separation. Advantages. Goethite is easier to separate magnetically and needs less energy to reduce compared to hematite. So, the extra cost of reducing hematite to magnetite can be compensated by the energy difference between reducing hematite and magnetite to metallic iron. Titanium Dioxide, also known as titanium (IV) oxide or titanic, is a white crystalline powder, made up of limonite and rutile, which are used as the main raw materials. It is created using either the chloride process or sulfuric acid, referred to as the sulfate process. Titanium dioxide is extensively used as a white pigment in paints and coatings application. Also, it has a wide range of applications, ranging from paints and sunscreens to food coloring FOR TiO2 Uses for white pigment Four million tons of pigmentary TiO2 are consumed annually. Apart from producing a white color in liquids, paste or as coating on solids, TiO2 is also an effective pacifier, making substances more opaque. Here are some examples of the extensive range of applications: ? Paints ? Plastics ? Papers ? Inks ? Medicines ? Most toothpastes ? Skimmed milk; adding TiO2 to skimmed milk makes it appear brighter, more opaque and more palatable Recovery of TiO2 Generally, there have been two main methods developed by which the titanium can be recovered from red mud: pyro metallurgical recovery and hydro-metallurgical recovery. The pyro- metallurgical method generally comprises the separation of pig iron. The red mud is claimed at a range of temperatures, from 800 to 1350°C, and is smelted through a reducing agent using an electric-furnace to obtain melted iron as well as slag that includes titanium dioxide, silica and alumina. The metallic iron is removed from the slag and the slag is digested to recover the titanium and aluminium from the solution. The pyro-metallurgical process is not an energy-friendly method and, hence, the hydrometallurgical technique usually attracts more attention from the research community. A number of the acids’ extractability have been analyzed to recover titanium from red mud, such as dilute and concentrated H2SO4 and hydrochloric acid. The solvent extraction technique has been applied to extract titanium from red mud using HCl, which comprised di- and mono-. Red mud can also be considered a secondary source of the most important modification of titanium compound, titanium dioxide. Market Outlook The Global Ferric Oxide Market is expected to register a CAGR of 4.99% to reach a value of USD 2,414,382.9 Million by 2030. The primary driver of the global ferric oxide market is its growing adoption in steel production. The increasing application of steel in the major end-use industries such as transportation, construction, and energy, packaging, and consumer appliances is also a prime factor driving market growth. Steel finds application in the manufacturing of automobile structures, panels, doors, engine blocks, gears, suspension, wheels, fuel tanks, steering, and braking systems. The use of iron oxide pigments to impart colors to construction materials, paints, inks, plastics, papers, cosmetics, rubbers, concrete blocks, and tiles is another key driver of the market. Global Ferric oxide Market Revenue, by Application, 2030 (USD Million) The growing construction industry output is expected to be one of the most significant drivers for the iron oxide market on a global scale. The growing adoption of iron oxide nanoparticles in wastewater treatment is an excellent opportunity for the players in the market. With the steady growth of the construction industry, stemming from increasing urban and civil infrastructure projects, the demand for iron oxides is expected to increase significantly. The ferric oxide market is witnessing consolidation, driven by the pursuit for sustainability among market participants, owing to the imposition of stringent regulations on the production of ferric oxide, which are increasing the overhead costs for ferric oxide manufacturers. This has prompted ferric oxide manufacturers to consolidate production and business operations through acquisition of external enterprises having a sufficient infrastructure and resources. Mining and metallurgy industry dominated the market in 2018, and it is likely to grow during the forecast period with the continuous growth in mining activities. The increasing demand for titanium dioxide downstream products and natural dyes in the textile industry are likely to provide opportunities for the studied market during the forecast period. Asia-Pacific dominated the market across the world, due to the growing mining activities in the region, and robust demand fueling the growth of polymer synthesis and chemicals industry. The global titanium dioxide market size was valued at USD 15.76 billion in 2018 and is expected to witness a CAGR of 8.7% from 2019 to 2025. The major factors driving the growth of the market studied are the increasing demand from the mining industry and increasing use in polymer synthesis. On the flipside, the toxicity of titanium dioxide hampers the growth of the market. Escalating demand for lightweight vehicles owing to strict emission policies is expected to fuel the market growth over the coming years. Thus, rising usage of lightweight materials for enhanced safety and fuel-efficiency is expected to have a positive impact on the industry over the forecast period. These lightweight materials, when coated with titanium dioxide, increase durability, stability, persistence, and scratch resistance. The product has an increasing application scope in printing inks, rubber, and chemical fibers. In printing inks, it is used in flexographic, lamination, screen printing, UV-cured, and metal decorative inks. The Top Players Including: ? Cathay Industries ? Huntsman ? Lanxess ? Bayferrox ? Toda Kogyo ? Quality Magnetite ? Prochem ? BariteWorld • Bengal Chemicals & Pharmaceuticals Ltd. • Bharat Chemicals & Fertilizers Ltd. • Kerala Minerals & Metals Ltd. • Kolmak Chemicals Ltd. • Tata Pigments Ltd. • Travancore Titanium Products Ltd. • V V Titanium Pigments Pvt. Ltd. • Kerala Minerals & Metals Ltd. Tags Recovery_of_Fe2O3_from_Bauxite_Processing, #Iron_Oxide_Recovery, #Recovery_of_Ferric_Oxide, #Recovery_of_Ferric_oxide_from_Bauxite_Processing_Waste, Ferric Oxide, Manufacturing Applications for Iron (III) Oxide, Manufacture of ferric oxide, Production of Iron (II) Oxide (Fe2O3), Process for the Manufacture of Iron Oxide, Process for Producing Iron Oxide, Iron Oxide Formula, Ferric Oxide Production, How to Make Iron Oxide, Preparation of iron oxide, Titanium Dioxide (TiO2) Production and Manufacturing, #Titanium_Dioxide, Manufacture of Titanium Dioxide, #Titanium_Dioxide_(TiO2) Production, Manufacturing Process of Titanium Dioxide, Titanium Dioxide Properties, Titanium Dioxide Uses, Titanium Dioxide Process Flow Diagram, Titanium Dioxide Manufacture, How to Make Titanium Dioxide, Manufacturing Process of Titanium Dioxide, Production of Titanium Dioxide, Titanium Dioxide Production, #Recovery_of_Titanium_Dioxide, Process for Recovery of Titanium Dioxide, Recovering Titanium Dioxide (Tio2), Recovery of Titanium Dioxide from Bauxite Processing Waste, #Project_Report_on_Recovery_of_Ferric_oxide_from_Bauxite_Processing_Waste, Detailed Project Report on Recovery of Ferric oxide from Bauxite Processing Waste, Project Report on Recovery of Titanium Dioxide, Pre-Investment Feasibility Study on Recovery of Ferric oxide from Bauxite Processing Waste, Techno-Economic feasibility study on Recovery of Titanium Dioxide, #Feasibility_report_on_Recovery_of_Ferric_oxide_from_Bauxite_Processing_Waste, #Free_Project_Profile_on_Recovery_of_Ferric_oxide_from_Bauxite_Processing_Waste, Project profile on Recovery of Ferric oxide from Bauxite Processing Waste, Download free project profile on Recovery of Titanium Dioxide
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
Add to Inquiry Add to Inquiry Basket

Recovery of Ferric oxide (Fe2O3) & Titanium Dioxide (TiO2) from Bauxite Processing Waste

Recovery of Ferric oxide (Fe2O3) & Titanium Dioxide (TiO2) from Bauxite Processing Waste. Wealth from Waste Ferric oxide (Fe? O?) is an inorganic compound also known as hematite. Ferric oxide is used in the iron industry in the manufacturing of alloys and steel. The Food and Drug Administration (FDA) has approved ferric oxide pigment for use in cosmetics. Moreover, ferric oxide granules are used in the form of filtration media for removing phosphates in saltwater aquariums. The global titanium dioxide market size was valued at USD 15.76 billion in 2018 and is expected to witness a CAGR of 8.7% from 2019 to 2025 In addition, high demand for anti-corrosive architectural coatings in the pigments has increased the demand for titanium dioxide. FOR Fe2O3 ? In iron industries for producing steel and alloys ? Ferric oxide powder, also called jeweler’s rouge, is used for polishing lenses and metallic jewelry ? Its granular form is used as a filtration media for pulling out phosphates in saltwater aquariums ? As FDA-approved Pigment Brown 6 and Pigment Red 101, for use in cosmetics. ? In biomedical applications, because its nanoparticles are non-toxic and biocompatible Recovery of Fe2O3 Fe2O3 is another material in red mud that has attracted a number of researchers. Until now, there are three means to recover iron from red mud: smelting, solid-state reduction and magnetic separation. In smelting process, red mud is charged into blast furnace or rotary furnace with a reducing agent. Then, iron oxide in red mud is reduced to generate pig iron that can be used in steel production. However, smelting process has some demerits. High energy and capital costs are associated with blast furnace (BF) operation because scale of operation is high. Red mud must be mixed with some good-grade iron ore to maintain the minimum grade of the charge to BF. In addition, titanium reacts with other constituents of the slag to form multiple oxides that are difficult to leach. In the solid-state reduction process, the mud is mixed with a reducing agent or contacted with a reducing gas to produce metallic iron. The product can be an input either in a steel-making furnace or a conventional blast furnace. Compared to smelting process, solid-state reduction process consumes less energy. But, it also has some disadvantages. First, the metallic iron produced is quite difficult to separate from the rest of product. So, it is easily polluted by gangue materials. Second, the product is in a very fine form. The recovery rate of Fe2O3 was 45% (weight percent). Another means is to convert hematite or goethite in red mud to magnetite firstly, which is followed with magnetic separation. Obviously, this process is more complex than magnetic separation. Advantages. Goethite is easier to separate magnetically and needs less energy to reduce compared to hematite. So, the extra cost of reducing hematite to magnetite can be compensated by the energy difference between reducing hematite and magnetite to metallic iron. Titanium Dioxide, also known as titanium (IV) oxide or titanic, is a white crystalline powder, made up of limonite and rutile, which are used as the main raw materials. It is created using either the chloride process or sulfuric acid, referred to as the sulfate process. Titanium dioxide is extensively used as a white pigment in paints and coatings application. Also, it has a wide range of applications, ranging from paints and sunscreens to food coloring FOR TiO2 Uses for white pigment Four million tons of pigmentary TiO2 are consumed annually. Apart from producing a white color in liquids, paste or as coating on solids, TiO2 is also an effective pacifier, making substances more opaque. Here are some examples of the extensive range of applications: ? Paints ? Plastics ? Papers ? Inks ? Medicines ? Most toothpastes ? Skimmed milk; adding TiO2 to skimmed milk makes it appear brighter, more opaque and more palatable Recovery of TiO2 Generally, there have been two main methods developed by which the titanium can be recovered from red mud: pyro metallurgical recovery and hydro-metallurgical recovery. The pyro- metallurgical method generally comprises the separation of pig iron. The red mud is claimed at a range of temperatures, from 800 to 1350°C, and is smelted through a reducing agent using an electric-furnace to obtain melted iron as well as slag that includes titanium dioxide, silica and alumina. The metallic iron is removed from the slag and the slag is digested to recover the titanium and aluminium from the solution. The pyro-metallurgical process is not an energy-friendly method and, hence, the hydrometallurgical technique usually attracts more attention from the research community. A number of the acids’ extractability have been analyzed to recover titanium from red mud, such as dilute and concentrated H2SO4 and hydrochloric acid. The solvent extraction technique has been applied to extract titanium from red mud using HCl, which comprised di- and mono-. Red mud can also be considered a secondary source of the most important modification of titanium compound, titanium dioxide. Market Outlook The Global Ferric Oxide Market is expected to register a CAGR of 4.99% to reach a value of USD 2,414,382.9 Million by 2030. The primary driver of the global ferric oxide market is its growing adoption in steel production. The increasing application of steel in the major end-use industries such as transportation, construction, and energy, packaging, and consumer appliances is also a prime factor driving market growth. Steel finds application in the manufacturing of automobile structures, panels, doors, engine blocks, gears, suspension, wheels, fuel tanks, steering, and braking systems. The use of iron oxide pigments to impart colors to construction materials, paints, inks, plastics, papers, cosmetics, rubbers, concrete blocks, and tiles is another key driver of the market. Global Ferric oxide Market Revenue, by Application, 2030 (USD Million) The growing construction industry output is expected to be one of the most significant drivers for the iron oxide market on a global scale. The growing adoption of iron oxide nanoparticles in wastewater treatment is an excellent opportunity for the players in the market. With the steady growth of the construction industry, stemming from increasing urban and civil infrastructure projects, the demand for iron oxides is expected to increase significantly. The ferric oxide market is witnessing consolidation, driven by the pursuit for sustainability among market participants, owing to the imposition of stringent regulations on the production of ferric oxide, which are increasing the overhead costs for ferric oxide manufacturers. This has prompted ferric oxide manufacturers to consolidate production and business operations through acquisition of external enterprises having a sufficient infrastructure and resources. Mining and metallurgy industry dominated the market in 2018, and it is likely to grow during the forecast period with the continuous growth in mining activities. The increasing demand for titanium dioxide downstream products and natural dyes in the textile industry are likely to provide opportunities for the studied market during the forecast period. Asia-Pacific dominated the market across the world, due to the growing mining activities in the region, and robust demand fueling the growth of polymer synthesis and chemicals industry. The global titanium dioxide market size was valued at USD 15.76 billion in 2018 and is expected to witness a CAGR of 8.7% from 2019 to 2025. The major factors driving the growth of the market studied are the increasing demand from the mining industry and increasing use in polymer synthesis. On the flipside, the toxicity of titanium dioxide hampers the growth of the market. Escalating demand for lightweight vehicles owing to strict emission policies is expected to fuel the market growth over the coming years. Thus, rising usage of lightweight materials for enhanced safety and fuel-efficiency is expected to have a positive impact on the industry over the forecast period. These lightweight materials, when coated with titanium dioxide, increase durability, stability, persistence, and scratch resistance. The product has an increasing application scope in printing inks, rubber, and chemical fibers. In printing inks, it is used in flexographic, lamination, screen printing, UV-cured, and metal decorative inks. The Top Players Including: ? Cathay Industries ? Huntsman ? Lanxess ? Bayferrox ? Toda Kogyo ? Quality Magnetite ? Prochem ? BariteWorld • Bengal Chemicals & Pharmaceuticals Ltd. • Bharat Chemicals & Fertilizers Ltd. • Kerala Minerals & Metals Ltd. • Kolmak Chemicals Ltd. • Tata Pigments Ltd. • Travancore Titanium Products Ltd. • V V Titanium Pigments Pvt. Ltd. • Kerala Minerals & Metals Ltd. Tags Recovery_of_Fe2O3_from_Bauxite_Processing, #Iron_Oxide_Recovery, #Recovery_of_Ferric_Oxide, #Recovery_of_Ferric_oxide_from_Bauxite_Processing_Waste, Ferric Oxide, Manufacturing Applications for Iron (III) Oxide, Manufacture of ferric oxide, Production of Iron (II) Oxide (Fe2O3), Process for the Manufacture of Iron Oxide, Process for Producing Iron Oxide, Iron Oxide Formula, Ferric Oxide Production, How to Make Iron Oxide, Preparation of iron oxide, Titanium Dioxide (TiO2) Production and Manufacturing, #Titanium_Dioxide, Manufacture of Titanium Dioxide, #Titanium_Dioxide_(TiO2) Production, Manufacturing Process of Titanium Dioxide, Titanium Dioxide Properties, Titanium Dioxide Uses, Titanium Dioxide Process Flow Diagram, Titanium Dioxide Manufacture, How to Make Titanium Dioxide, Manufacturing Process of Titanium Dioxide, Production of Titanium Dioxide, Titanium Dioxide Production, #Recovery_of_Titanium_Dioxide, Process for Recovery of Titanium Dioxide, Recovering Titanium Dioxide (Tio2), Recovery of Titanium Dioxide from Bauxite Processing Waste, #Project_Report_on_Recovery_of_Ferric_oxide_from_Bauxite_Processing_Waste, Detailed Project Report on Recovery of Ferric oxide from Bauxite Processing Waste, Project Report on Recovery of Titanium Dioxide, Pre-Investment Feasibility Study on Recovery of Ferric oxide from Bauxite Processing Waste, Techno-Economic feasibility study on Recovery of Titanium Dioxide, #Feasibility_report_on_Recovery_of_Ferric_oxide_from_Bauxite_Processing_Waste, #Free_Project_Profile_on_Recovery_of_Ferric_oxide_from_Bauxite_Processing_Waste, Project profile on Recovery of Ferric oxide from Bauxite Processing Waste, Download free project profile on Recovery of Titanium Dioxide
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
Add to Inquiry Add to Inquiry Basket

Project Opportunities in Production of Calcium Propionate

Project Opportunities in Production of Calcium Propionate. Fastest Growing & Best Industry for Starting a Business. Calcium propionate is the most commonly used bread preservative globally. It is an effective growth inhibitor of most molds and some bacteria. It is widely employed in bread and other yeast-based bakery goods to prevent mold and rope formation and to extend their normal shelf life. Calcium propionate is used as a preservative in a wide variety of products, including but not limited to bread, other baked goods, processed meat, whey, and other dairy products. In agriculture, it is used, amongst other things, to prevent milk fever in cows and as a feed supplement Propionates prevent microbes from producing the energy they need, like benzoates do. However, unlike benzoates, propionates do not require an acidic environment. Calcium propionate is one of the safest food additives used by the food industry. Rats fed a diet containing nearly 4% calcium propionate for a year showed no ill effects. As a result, the U.S. Food and Drug Administration has placed no limitations on its use in foods. In addition to baked goods, it is commonly used as a preservative in chocolate products, processed cheeses, and fruit preserves. The tobacco industry has also used calcium propionate as a preservative in some of its products. Uses Calcium propionate is a preservative commonly used in baked goods around the world. It works to extend the shelf life of baked goods by preventing mold and ropy bread bacteria growth. Mold inhibitor in pre-packed and sliced bread, Calcium propionate is used as a preservative in bread and other baked goods, and it may be combined with along with propionic acid and sodium propionate. Calcium propionate helps keep baked goods fresh by preventing mold and bacterial growth that would otherwise cause them to go bad. Market Outlook The growing food industry is expected to fuel the demand for calcium propionate in the forecast period. Moreover, the changing lifestyle is affecting the food consumption habits of people and hence is expected to boost the calcium propionate market. The increasing demand for food preservation is anticipated to be one of the major demand driver in the global calcium propionate market in the near future. Growing concerns among the customers regarding hygiene and fresh food would help grow the calcium propionate market. R&D investments and proper expansion in the growing markets can create better opportunities for the global calcium propionate market players. The growing food industry in China and India is expected to boost the demand for calcium propionate in developing regions in the upcoming years. However, the stringent regulations pertaining to quality and food safety is projected to restrain the global calcium propionate market. Local regulations should be checked for allowed applications and dosage levels. For example, calcium propionate is authorized for use in food and technology additives in Europe. However, the usage rates in Southeast Asia may be higher as compared to Europe as the conditions are more favorable for growth of spoilage organisms. Also, growing competition from other preservatives such as sodium propionate would be a threat for global calcium propionate market. The growing food industry is anticipated to fuel the global calcium propionate market during the forecast period. The changing food consumption pattern coupled with disposable income is expected to boost the calcium propionate market. Moreover, increasing demand for the processed and ready-to-eat food is likely to fuel the market growth in the coming future. Calcium propionate is cost effective and relatively less toxic as compared to other substitutes such as sorbets and sulfites, which may further drive the market growth. Surging demand for the product in pharmaceuticals and cosmetics to inhibit microbial growth and prevent spoilage is also anticipated to favor the market growth during the years to follow. However, the shifting consumer patterns away from the consumption of food containing chemical additives and preservatives may hamper the market growth in the coming years. Global calcium propionate market is expected to witness high growth over the forecast period on account of growing consumer preferences for fresh food products. Increasing health concerns coupled with changing consumer lifestyle has prompted the use of calcium propionate in recent past. It is majorly used as a preservative in bakery products including bread, processed meat, baked products and various dairy products. Calcium propionate also acts as antimicrobial agent for killing microorganisms such as bacteria, algae, viruses and fungi. The calcium propionate market is projected to grow at a CAGR of 5.6%, to reach a value of USD 363.3 million by 2023 from USD 277.1 million in 2018. Key player Niacet (US), ADDCON (Germany), Impextraco (Belgium), and Macco Organiques (Canada), Perstorp Holdings AB, Macco Organiques Inc., AB Mauri, Kemira and Niacet Corporation. Other companies are Addcon Gmbh, Krishna Chemicals, A.M. Food Chemicals Co. Ltd., Impextraco NV, Ltd (China), ADDCON (Germany), Fine organics (India), Kemira Oyj (Finland), Impextraco NV (Belgium), Krishna Chemicals (India), Niacet (U.S), Macco Organiques inc (Czech Republic), Perstorp Orgnr (Sweden), Cargill Incorporated. (U.S), AB Mauri India Pvt.Ltd. (India), BASF SE (Germany), Triveni Chemicals (India), Kemin Industries, Inc. (USA), and Eastman Chemical Company (U.S). Tags #Calcium_Propionate_Market, #Calcium_Propionate_Manufacturing_Industry, #Calcium_Propionate_Manufacturing_Plant, #Calcium_Propionate_Manufacturing_Plant, calcium_propionate_manufacturing_process, #Calcium_Propionate_Manufacturers_Suppliers, #Method_for_manufacturing_calcium_propionate, #Calcium_Propionate_Manufacturing_Plant, #Proposed_manufacturing_unit, #Global_Calcium_Propionate_Market_Insights, #Global_Calcium_Propionate_Market_Research_Report, #How to Start Calcium Propionate Processing Industry in India, #Calcium Propionate Processing Industry in India Most Profitable Calcium Propionate Processing Business Ideas , #Calcium Propionate Processing & Calcium Propionate Based Profitable Projects, #Calcium Propionate Processing Projects, Small Scale Calcium Propionate Processing Projects, Starting a Calcium Propionate Processing Business, How to Start a Calcium Propionate Production Business Calcium Propionate Based Small Scale Industries Projects, new small scale ideas in Calcium Propionate processing industry, Project report on Calcium Propionate processing industries, Detailed Project Report on Calcium Propionate, Project Report on Calcium Propionate, Pre-Investment Feasibility Study on Calcium Propionate, Techno-Economic feasibility study on Calcium Propionate, Feasibility report on Calcium Propionate Calcium Propionate, Free Project Profile on Calcium Propionate, Project profile on Calcium Propionate, Download free project profile on Calcium Propionate, Industrial Project Report, Start-up Business Plan for Calcium Propionate, Start Up India, Stand Up India, Calcium Propionate Making Small Business Manufacturing, small scale Calcium Propionate making machine Calcium Propionate production line, Calcium Propionate making machine factory, modern small and cottage scale industries, profitable small and cottage scale industries, Setting up and opening your Calcium Propionate Business, How to Start a Calcium Propionate? , How to start a successful Calcium Propionate business
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
Add to Inquiry Add to Inquiry Basket

Silica Produced From Rice Husk Ash

Silica Produced From Rice Husk Ash. Rice Husk Ash Silica Manufacture. Emerging Investment Opportunities in agriculture waste processing Industry Silica occurs as amorphous to crystalline form in many types of igneous, metamorphic, and sedimentary rocks, but in sediments and sedimentary rocks much of the silica is detrital material. The chief forms of silica are hydrous opal, cryptocrystalline chalcedony, and crystalline quartz. As a byproduct of the combustion of rice husk to generate energy, rice husk ash (RHA) is formed by silica and carbon, apart from small amounts of other constituents. Several treatments can be used to increase the purity of the silica obtained, or even produce pure silica. Rice Husk Ash. Rice husk ash (RHA) is a highly reactive pozzolan obtained when rice husks are calcinated below the crystallization temperature at 780°C (Yu et al 1999). Silica is not a new commodity in the plastics market. Its usage as extenders and reinforcing fillers, as pozzolanic material and as glass microspheres for specific engineering applications are well known in the market. Because of its high silica and lignin content, rice husk is tough, woody and abrasive in nature with low nutritive properties and resistance to weathering. With growing environmental concern, open burning has been outlawed in many major rice-producing countries. 18% of the rice husk can be retrieved as ash after the gasification process. Silica content in ash is almost 90% and the rate of recovery of precipitated silica is 90-95% from the rice husk ash if the conversion efficiency is more than 70%. Rice hull ash (RHA) contains over 60% of silica which can be an economically viable raw material for the production of silica based products. Silica generation is a separate independent process not dependent on electricity generation, although the input ash is dependent on gasification process. Provision will be taken in the design so that external ash is used also as input thus increase silica production. Uses ? Rubber reinforcement (Tyre industry) ? Plastic reinforcement ? Agriculture (Animal food) ? Food, Healthcare, Cosmetics ? Catalyst; Coatings ? Pulp and Paper processing Market Outlook Combustion of rice hulls affords rice husk ash (acronym RHA). This ash is a potential source of amorphous reactive silica, which has a variety of applications in materials science. Most of the ash is used in the production of Portland cement. The rice husk ash is a green supplementary material that has applications in small to large scale. It can be used for waterproofing. It is also used as the admixture to make the concrete resistant against chemical penetration. The main applications of rice husk ash in the construction are: High-performance Concrete. Use of waste or by-products from different industries and the agricultural sector has received increasing attention in the scientific, technology, ecological, economic and social spheres in recent years. Rice husk (RH) is a by-product of rice milling and rice husk ash (RHA) is generated by combustion in a separate boiler. Both RH and RHA are abundantly accessible in rice growing countries such as China, India, Brazil, the USA, and Southeast Asia. Silica is the major constituent of the rice husk ash. So precipitated silica production will not only provide value addition but also solve the problem of large amount of ash disposal generated from gasification process. With such a large ash content & silica content in the ash it becomes economical to extract silica from the ash, which has wide market & also takes care of ash disposal. Precipitated Silica (also called particulate silica) is composed of aggregates of ultimate particles of colloidal size that have not become linked in massive gel network during the preparation process. It is an amorphous form of silica; the word amorphous denotes a lack or crystal structure, as defined by X ray diffraction. Early interest in amorphous silica was purely academic. The ash produced after the husks have been burned is high in silica. RHA can be used in a variety of application like: green concrete, high performance concrete, ceramic glaze, water proofing chemicals, roofing shingles, insulator, specialty paints, flame retardants, carrier for pesticides, insecticides & bio fertilizers etc. Precipitated silica is also used as filler for paper & rubber, as a carrier & diluents for agricultural chemicals, as an anti-caking agent, to control viscosity & thickness and as a cleansing agent in toothpastes & in cosmetics. The distinguishing feature of the growth of precipitated silica industry in India is that it has classifiably flourished in the small scale sector. Readily available new materials low capital investment & high rates of return offer a distinct advantage to the small scale manufacturers to venture into this field. There is a very good scope in this sector The market scope includes silica forms including precipitated, fumed, gels and sols, and micro silica (fumes). Rising demand for the product from the rubber industry is the primary factor driving the market. Increase in demand for tires is mainly driven by rising automotive production, especially in countries such as India, China, Indonesia, South Korea, Japan, Malaysia, Taiwan, Mexico, U.S., and Germany. Rapid economic growth. Silica provides higher abrasion resistance, tensile strength, and flex fatigue properties to rubber products. It is widely used in tire applications, owing to its ability to improve the bond and tear resistance between rubber tires and metallic reinforcements The growth of silica as a market is driven by its increasing application in paints and coatings. It is mainly utilized in this industry to control rheological characteristics and to aid in the deterrence of rust and corrosion. It is also used as an anti-settling agent and thixotroping agent in the sector. A developing paints and coatings industry in the emerging markets of Asia Pacific, driven by growing construction and automotive sectors, is expected to drive product demand over the forecast period. Key players SCR-Sibelco, US Silica Holdings, Emerge Energy Services, Fairmount Santrol, Badger Mining Corporation, Hi-Crush Partners, Saint Gobain, Mitsubishi Corporation, Toyota Tsusho, Pioneer Natural Resources, Tochu, EUROQUARZ GmbH, Guru Metachem Pvt. Ltd. (India), Yihai Kerry Investments Co., Ltd. (China), Usher Agro Ltd. (India), Jasoriya Rice Mill (India), and Rescon (India) Pvt. Ltd, Guru Metachem Pvt. Ltd., Astrra Chemicals, Jasoriya Rice Mill, KGR Agro Fusion (P) Ltd., Kothari Bio Fuels, B.D. Agrotech Pvt. Ltd., KRBL Limited, and J.M. Biotech Pvt. Ltd. Abhiraami Chemicals Ltd, Balls & Cylpebs Ltd, Kiran Global Chems Ltd, Shri Aster Silicates Ltd. Tags #Precipitated_silica, #Production_of_Silica, #Silica_From_Rice_Husk_Ash_Manufacturing_Plant, #Precipitated_Silica_Manufactures, #Introduction_of_Silica_Sand_Production, #Silica_Sand_Manufacturing_Plant, #Industrial_Processing_Plant_Precipitated_Silica, #Project_Report_on_Precipitated_Silica_Manufacturing, #Project_Report_on_Extraction_Precipitated_Silica_Rice_Husk_Ash, #Investment_Opportunities_in_Precipitated_Silica_from_Rice_Husk, #rice_husk_ash_silica_manufacturer, #extraction_of_silica_from_rice_husk_pdf, silica from rice husk ppt, rice husk ash silica manufacturer in India, Rice Husk Ash Manufacturers & Suppliers In India, India Silicon Market Report, Precipitated Silica Sand Manufacturing Plant, silica gel manufacturing plant, silicone gel manufacturers, How to Start Silica Processing Industry in India, Silica Processing Industry in India, Most Profitable Silica Processing Business Ideas , Silica from Rice Husk Ash Processing & Silica from Rice Husk Ash Based Profitable Projects, Silica from Rice Husk Ash Processing Projects, Small Scale Silica from Rice Husk Ash Processing Projects, Starting a Silica from Rice Husk Ash Processing Business, How to Start a Silica from Rice Husk Ash Production Business, Silica from Rice Husk Ash Based Small Scale Industries Projects, new small scale ideas in Silica from Rice Husk Ash processing industry Project report on Silica from Rice Husk Ash processing industries, Detailed Project Report on Silica from Rice Husk Ash, Project Report on Silica from Rice Husk Ash, Pre-Investment Feasibility Study on Silica from Rice Husk Ash, Techno-Economic feasibility study on Silica from Rice Husk Ash, Feasibility report on Silica from Rice Husk Ash, Free Project Profile on Silica from Rice Husk Ash, Project profile on Silica from Rice Husk Ash, Download free project profile on Silica from Rice Husk Ash, Business guidance to clients, Startup Project for Silica from Rice Husk Ash, Great Opportunity for Startup, Small Start-up Business Project, Start-up Business Plan for Silica from Rice Husk Ash, Start Up India, Stand Up India, Silica from Rice Husk Ash Making Small Business Manufacturing, small scale Silica from Rice Husk Ash making machine Silica from Rice Husk Ash production line, Silica from Rice Husk Ash making machine factory
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
Add to Inquiry Add to Inquiry Basket

Production of Glacial Acetic Acid. Investment Opportunities in Chemical Industry.

Production of Glacial Acetic Acid. Investment Opportunities in Chemical Industry. Glacial acetic acid is the anhydrous (undiluted or free of water) form of acetic acid. Acetic acid is considered an organic compound and has the chemical formula CH3COOH. A diluted solution of acetic acid is known as vinegar or ethnic acid or ethylic acid. The common name for ethanoic acid is acetic acid. A solution of 4 percent or more acetic acid and water is called 'vinegar.' The formula for acetic acid is CH3COOH. Acetic acid that contains a very low amount of water (less than 1%) is called anhydrous (water-free) acetic acid or glacial acetic acid. The reason it's called glacial is because it solidifies into solid acetic acid crystals just cooler than room temperature at 16.7 °C, which ice. Glacial acetic acid is an excellent polar solvent. It is frequently used as a solvent for recrystallization to purify organic compounds. Glacial acetic acid is used in analytical chemistry for the estimation of weakly alkaline substance Acetic acid has been used for centuries in food production, manufacturing, cleaning, and even medical purposes. Generally, undiluted glacial acetic acid has no medical use, but a review of the literature reveals that acetic acid in diluted concentrations has been used for a variety of indications. Pure water-free acetic acid is called glacial acetic acid. It is a colorless liquid that absorbs water from the environment and freezes at 16.7 °C to a colorless crystalline solid. It is a weak acid and is known as Glacial because on freezing it forms needle shape crystals .It is a clear colorless liquid with a pungent odor. It is obtained by the destructive distillation of wood by oxidation of acetylene and water by air or by the oxidation of ethyl alcohol by aerobic bacteria as in the production of vinegar. Glacial acetic acid is strongly corrosive and potentially flammable having a low flash point. Home vinegar is five percent by mass acetic acid. Dilute acetic acid in the form of vinegar has many home and culinary purposes. Uses ? The main use of glacial acetic acid in cooking is in form of vinegar. ? It is generally used in cooking, making salads, and pickling and canning. ? Marinating meat in dilute acetic acid kills bacteria and tenderizes the meat. ? Soak wilted vegetables in a mixture of two cups of water and a tablespoon of acetic acid to freshen them up. ? To make cheese last longer, store it in an acid soaked cloth. ? To prevent eggs from cracking when you boil them just add two tablespoons of glacial acetic acid to the water before boiling it. This will also help you to peel off the egg shells faster and easier. Market Outlook Acetic acid is used in the manufacturing of coatings, greases, polyesters and sealants which find applications in a number of industries such as electronics, automobiles, textiles, and packaging. Presently polyethylene terephthalate (PET) bottles are gaining popularity in the medical and consumer goods sectors as they are lightweight and recyclable in nature. As PET bottles are manufactured by using purified terephthalic acid (PTA), produced from acetic acid their mounting demand is catalyzing the growth of the market. At present China is the largest glacial acetic acid market and is expected to grow on account of increasing demand for the end use applications in the region. Increasing industrialization in the nation is expected to drive the market demand over the next seven years. In addition China being the one of the largest producers of automobiles is expected to have a huge market for sealants and adhesives which in turn is expected to propel glacial acetic acid demand. Owing to availability of cheap labor coupled with the ease of availability of raw material, China glacial acetic acid market anticipates to witness high growth. A rise has been witnessed in the consumption of vinegar as it helps in reducing weight maintaining blood pressure and regulating blood sugar and cholesterol levels. As acetic acid is used in the manufacturing of vinegar it is impelling the overall growth of the market. Polyethylene terephthalate (PET) bottles are gaining popularity in the medical and consumer goods sectors as they are lightweight and recyclable in nature. As PET bottles are manufactured by using purified terephthalic acid (PTA), produced from acetic acid, their mounting demand is catalyzing the growth of the market. A rise has been witnessed in the consumption of vinegar as it helps in reducing weight, maintaining blood pressure, and regulating blood sugar and cholesterol levels. As acetic acid is used in the manufacturing of vinegar, it is impelling the overall growth of the market. Manufacturers of acetic acid are increasingly adopting new technologies like BP's Captiva and Celanese's AO-plus (Acid Optimization Plus) which deliver significant savings in variable costs as well as lower capital costs for the construction of new plants. Besides this they also increase the capacity enhance the production efficiency and reduce the energy consumption by approximately 30% and lower operating costs. The increasing adoption of these emerging technologies for producing the chemical and its derivatives is creating a positive growth of the industry. Global Glacial Acetic Acid market size will increase to Million US$ by 2025 from Million US$ in 2017 at a CAGR. 2017 has been considered as the base year and 2018 to 2025. The progression can be attributed to the exploding construction sector disrupted by the demand to provide habitat for blooming global population. The global acetic acid market is determined to capitalize on such bourgeoning construction of infrastructures globally. A majority of acetic acid production is invested in the manufacturing of vinyl acetate monomer or VAM an integral component used to make essential construction commodities such as paints and adhesives. Increase in disposable income has diverted consumers towards affordability of architectural decorations hence supplementing the purchasing of paints and coatings. Key Players Celanese, Eastman Chemical Company, Qingdao Huatuo Chemicals Co. Ltd., Henan CXH Purity Industrial And Trading Co. Ltd., Zhengzhou Kelai Chemical Co. Ltd., HarvinImpex Pvt. Ltd. India, Ultra Chemical Works, A.B. Enterprises, Akchem and Chemical Point UG. British Petroleum Plc, Celanese Corporation, Daicel Corporation, DuPont, Eastman Chemical Company, GNFC Limited, HELM AG, LyondellBasell Industries N.V, Mitsubishi Chemical Corporation, PetroChina, SABIC, Showa Denko K.K, Sinopec, Svensk Etanolkemi AB (SEKAB), Wacker Chemie AG Tags #Glacial_Acetic_Acid_Manufacturing_Plant_Detailed_Project, #Project_Report_on_Acetic_Acid_Glacial_Ethyl_Alcohol, #Acetic_Acid_Glacial_Project_Report, #Acetic_Acid_Technology_Products_Manufacturing, #Acetic_Acid_From_Molasses_Manufacturing, #Acetic_Acid_Market_Acquiring_Demand_From_Healthcare_Industry, #Global_Acetic_Acid_Market_Top_Manufacturing, #Acetic_acid_production, #Process_for_manufacturing_glacial_acetic_acid, #Powder_Acetic_Acid_Glacial, #Acetic_Acid_Production _and_Purification, Becoming Acetic Acid Manufacture, Celanese Acetic Acid Plant, Global Acetic Acid Industry, Process for manufacturing glacial acetic acid, Global Acetic Acid Market Top Manufacturing, Food Grade Acetic Acid Distributor, Glacial acetic acid-General Suppliers Product Process, Acetic Acid Market Growth Production, Acetic Acid Process Plant, Sulphonic acid manufacturing process pdf, Urea manufacturing process, Most Profitable Glacial Acetic Acid Business Ideas, Glacial Acetic Acid Industry, Profitable Glacial Acetic Acid Business in India, Starting a Glacial Acetic Acid Business, New small scale ideas in Glacial Acetic Acid industry, Small scale Glacial Acetic Acid industry, Glacial Acetic Acid industry project report, Small scale Glacial Acetic Acid projects, Indian Glacial Acetic Acid Industry, Projects for Small Scale Glacial Acetic Acid Industry, How to Start Manufacturing Processing Business,
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
Add to Inquiry Add to Inquiry Basket

Production of Carbon Black

Production of Carbon Black. Profitable Opportunities in Carbon Black Business. Carbon black is a generic term for a particulate form of elemental carbon manufactured by the gas-phase pyrolysis and partial combustion of hydrocarbons. Carbon black is virtually pure elemental carbon in the form of colloidal particles that are produced by incomplete combustion or thermal decomposition of gaseous or liquid hydrocarbons under controlled conditions. Its physical appearance is that of a black, finely divided pellet or powder. Carbon black is not soot or black carbon, which are the two most common, generic terms applied to various unwanted carbonaceous by-products resulting from the incomplete combustion of carbon-containing materials, such as oil, fuel oils or gasoline, coal, paper, rubber, plastics and waste material. Soot and black carbon also contain large quantities of dichloromethane- and toluene extractable materials, and can exhibit an ash content of 50% or more. In most furnace reactors, the reaction rate is controlled by steam or water sprays. The carbon black produced is conveyed through the reactor, cooled, and collected in bag filters in a continuous process. Residual gas, or tail gas, from a furnace reactor includes a variety of gases such as carbon monoxide and hydrogen. Most furnace black plants use a portion of this residual gas to produce heat, steam, or electric power. Carbon black is elemental carbon that is produced by partial combustion or decomposition of hydrocarbons such as oil and natural gas under controlled temperature and pressure. It mainly consists of carbon along with small amounts of hydrogen, oxygen, sulfur and nitrogen. Market Outlook The demand for carbon black in India stood at 984.63 thousand tonnes in 2018 and is projected to grow at a CAGR of 5.82% during 2019-2030 to reach 1853.84 thousand tonnes by 2030. Growth in the Indian packaging industry has increased the demand for carbon black in food packaging, industrial film, lamination and carrier bags and high-quality protective packaging applications. Furthermore, the Indian government's mission to make India a 100% electric vehicle nation by 2030 under the new National Electric Mobility Mission Plan is expected to push the demand for automobiles in the coming years. This demand in turn would aid growth in ancillary industries such as tire industry, which use carbon black as their primary raw material. Moreover, the demand for industrial rubber such as in conveyor belts and hoses is anticipated to positively influence the demand for carbon black in India during 2019-2030. Carbon black is elemental carbon that is produced by partial combustion or decomposition of hydrocarbons such as oil and natural gas under controlled temperature and pressure. It mainly consists of carbon along with small amounts of hydrogen, oxygen, sulfur and nitrogen. Carbon black is most commonly produced by the furnace method that provides high yield and substantial control over the particle structure and size of the output, making it ideal for mass production. It finds wide application across various industries such as automotive and paint. It is also used as a filler and a strengthening agent in tires and several rubber products. The Indian carbon black market will intensify as the market comprises a small number of players and the growth is very high, which supplements rivalry. Also, there is possible threat of backward integration by tyre and automobile manufacturers which could diversify into carbon black manufacturing in near future. The rising imports from China also pose a big threat before the Indian manufacturers which could cause disruption of domestic industry. The growing automotive industry is one of the key factors driving the market growth. Carbon black is extensively used in the inner liners, sidewalls and treads of tires as it increases their strength and longevity. It is also applied in various extruded and molded industrial rubber products such as air springs, belts, hoses, gaskets and types of conveyor wheels and grommets. Furthermore, the flourishing construction and manufacturing sectors are also driving the market growth. These sectors extensively utilize industrial rubber and other related equipment in which carbon black forms an integral part. Moreover, in the paints and coatings industry it is used in jet black paints which act as a protective coating to various products. There has been an increase in the demand for carbon black in the construction industry. The global carbon black market to reach a value of US$ 14.5 Billion by 2024 registering a CAGR of around 3.6% during 2019-2024. The growing automotive industry is one of the key factors driving the market growth. Carbon black is extensively used in the inner liners, sidewalls and treads of tires as it increases their strength and longevity. It is also applied in various extruded and molded industrial rubber products such as air springs, belts, hoses, gaskets and types of conveyor wheels and grommets. Furthermore, the flourishing construction and manufacturing sectors are also driving the market growth. Increasing demand for specialty carbon black has prompted leading carbon black manufacturers to either increase their production capacity in the segment or convert the production line for standard carbon black to specialty carbon black. Increasing investment in tyre industry coupled with rising demand for specialty products is anticipated to propel growth in global carbon black market. Carbon black is one of the (reinforces) that frequently used in tire industry owing to its effect on mechanical and dynamic properties of tires. It is used in various formulations with different rubber types to customize the performance properties of tires. It is used in various formulations with different rubber types to customize the performance properties of tires. Growth in the adoption of electric cars and self-driving cars is likely to act as an opportunity in the future. The market across the globe with the largest consumption from the countries such as China and India. Key players ? Phillips Carbon Black Limited, ? SKI Carbon Black India Private Limited, ? Continental Carbon India Limited, ? Ralson Carbon Black Limited, ? Birla Carbon ? Orion Engineered Carbon ? Cabot Corporation ? Jiangxi Black Cat Carbon Black Co. Ltd ? Aditya Birla Group, ? Omsktechuglerod OOO, ? OCI Company Ltd., ? China Synthetic Rubber Corporation (CSRC), ? Orion Engineered Carbons GmbH, ? Sid Richardson Carbon Co., ? Shandong Huadong Rubber Materials Co., Ltd. ? Jiangxi Black Cat Carbon Black Co., Ltd Tags #carbonblackandwhite #carbonblack #carbonbusiness #carbon #activatedcarbon #carbonfiber #carbonfibermanufacturing #carbonfibereverything #carbonfiberco #fiberglass #CarbonConsultancy #carbonblackmarket #Carbon_Black_Market_analysis #Carbon_Black_Market_forecast #CarbonBlackIndustry #DetailedProjectReport #BusinessPlan #marketresearchreport #ProjectReportForBankLoan #PreFeasibilityandFeasibilityStudy #feasibilityreport #BusinessStrategy #businessplanning #Businessproject Manufacturing Process of Carbon Black, What is Carbon Black?, carbon black manufacturing process ppt, carbon black manufacturing process pdf, carbon black manufacturing plant cost, carbon black manufacturers, carbon black pdf, Process technology books, Business consultancy of Carbon Black, Business consultant, Project identification and selection, Preparation of Project Profiles, Startup Business guidance on Carbon Black, Business guidance to clients, Startup Project for Carbon Black, Project for startups, Startup project plan Business Plan for a Startup Business, Great Opportunity for Startup on Carbon Black, Start-up Business Plan for Carbon Black, Carbon Black Making Small Business Manufacturing, How to start a successful Carbon Black business, Small scale Commercial Carbon Black making, Profitable Small Scale Manufacturing, Feasibility Reports List, Detailed Project Reports List, Project Reports, Project Consultancy Services, NPCS, Niir.Org, Business Ideas, Entrepreneur, Business Plan, Technology Book, Manufacturing Business, Detailed Project Report, Market Research Report, Techno-Economic Feasibility Study, Feasibility Report, Project Report & Profile, Project Consultancy, Project Opportunities, Technology Books, Business Listing, Business Books, Small Scale Industries, Consultancy for Carbon Black, Feasibility Report, Project Report, Technology Book on Carbon Black, Business Ideas, Startup Project, Project Consultancy on Carbon Black, Niir Project Consultancy Services, Project Profile, Small Scale Industry, manufacturing business, technology on Carbon Black, Consultancy Services, Consultant for Carbon Black, Feasibility Report on Carbon Black, Production of Carbon Black, project cost, Investment Opportunities of Carbon Black, Industry Trends, Project Reports and Technology Books on Carbon Black, Industry, Market Detailed Analysis Report, Profitable business on Carbon Black,
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
Add to Inquiry Add to Inquiry Basket

Production of Formic Acid

Production of Formic Acid. Investment Opportunities in Chemical Industry. Formic acid was first isolated from certain ants and was named after the Latin Formica, meaning ant. It is made by the action of sulfuric acid upon sodium formate, which is produced from carbon monoxide and sodium hydroxide. Formic acid. Saturated fat. The principal use of formic acid is as a preservative and antibacterial agent in livestock feed. When sprayed on fresh hay or other silage, it arrests certain decay processes and causes the feed to retain its nutritive value longer and so it is widely used to preserve winter feed for cattle. Formic acid is also prepared in the form of its esters by treatment of carbon monoxide with an alcohol such as methanol (methyl alcohol) in the presence of a catalyst. Formic acid (also called methanoic acid) is a colorless liquid with a sharp odor. It is also the simplest carboxylic acid. The chemical formula is HCOOH or HCO2H. Formic acid is an environmentally acceptable and highly efficient organic acid. It is used in many areas, from leather processing to feed preservation. Formic acid is soluble in water, various alcohols, acetone and ether. Most applications require formic acid in concentrations of 85%, 90%, 94% or 99%; the 85% product accounts for the major portion of global demand and is considered the industry standard. Market Outlook The global demand will increase from 95.4 Mb/d to 102.3 Mb/d with an annual growth rate of 1.2 Mb/d in terms of the barrel. Furthermore, the organization estimates the demand growth rate to be 0.6% through to 2040. This upsurge in the demand for oil will substantially resonate with the demand influx in the formic acid market that was valued to be around $550 million. This attributes to the application of formic acid in the oil & gas sector as the derivative of the chemical, potassium formate brine is added to drilling fluids in order to make them heavier. The demand for formic acid in various industries will observe a compound annual growth rate (CAGR) of 4.9% during the forecast period of 2019 to 2025. The pharmaceutical sector has been making strides with a gamut of international companies investing in developing economies such as India. Subsequently, the demand for formic acid, which is used in pharmaceutical industries, is on the rise. The region led the formic acid market. One of the major factors driving the growth of formic acid is the increasing demand for preservatives and feed additives. Increasing consumption of meat and poultry has also hugely attributed to the growth of the market. The market is segmented into animal feed, rubber and leather, finishing textile, dyeing, cleaning agents, and others. Formic Acid & rsquos proliferation in the animal feed industry has been so extensive that it is now dominating the segment and will continue to do in the coming years. Agriculture and animal feed industries are experiencing a transformation due to the increasing implementation of formic acid. Formic acid is the simplest form of the carboxylic acid, and its eco-friendly features assist in protecting livestock feed, ensuring nutritional value and increasing shelf life of foods to maintain a continuous supply of the same during the winter season. Global formic acid market is anticipated to witness significant growth increasing application scope in various end-use industries including leather, textile, rubber, chemical, pharmaceutical and agriculture. Rising demand for preservative and antibacterial agents in cattle feed is expected to augment the formic acid market growth. Rubber and leather industry are anticipated to be the fastest growing application segment owing to rising demand for tires and consumer goods in Asia Pacific. However agriculture segment is expected to witness largest demand on account of increasing use of animal feed additives. Superior antibacterial properties further fuel formic acid demand in aforementioned applications. Growing health and safety concerns ban on use of antibiotics in animal feedstock and increasing consumption of poultry & meat products are anticipated to propel the formic acid market over the next seven years. Asia Pacific formic acid market is anticipated to grow at a fast pace over the forecast period owing to increasing demand in rubber, agriculture, leather & textile industries in China and India. Lower capital and labor costs along with rapidly growing market in China are expected to draw high investments from major players. Agricultural segment is poised to lead the formic acid market is expected to create growth opportunities. Formic acid as a commercial animal feed additive, is added to the animal diet for feed it is used as an animal feed additive for fisheries, cattle, poultry, etc. Growth of cattle and poultry is higher in countries, such as the United States, China, India, etc., and these are the countries where the demand for formic acid has increased at a moderately high rate. Formic acid is also used as an antibacterial agent and preservative in livestock feed. Formic acid is sprayed on fresh hay, in order to delay or halt decay, thereby, allowing the feed a longer survival period. This process is of particular importance in the preservation of winter cattle feed. In poultry farming, formic acid is applied to feed in order to kill salmonella bacteria. These practices are widespread in Europe, but are not as common in the United States, due to the generally low commercial availability of formic acid. The use of formic acid on hay feed may reduce the total milk fat when given to mulch cows. Formic acid are on the rise due to the increase in demand for animal feed. This trend is expected to contribute to the demand for formic acid. Key Players ? BASF SE (Germany) ? Feicheng Acid Chemical (China) ? Gujarat Narmada Valley Fertilizers & Chemicals Limited (India) ? Chongqing Chuandong Chemical (Group) Co., Ltd (China) ? LUXI Group Co., Ltd. (China) ? Eastman Chemical Company (U.S) ? Perstorp AB (Sweden) ? Anhui Asahi Kasei Chemical ? Rashtriya Chemicals and Fertilizers ? Tianyuan Group ? Feicheng Acid ? Perstorp ? Wuhan Ruisunny Chemical ? Shandong Rongyue Chemical ? Huaqiang Chemical ? Shanxi Yuanping Chemicals Tags #formicacid #Acid #FormicAcid #chemicalIndustry #FormicAcidMarket #FormicAcidMarketSize #FormicAcidMarketDemand #DetailedProjectReport #businessconsultant #Manufacturing #BusinessPlan #marketresearchreport #ProjectReportForBankLoan #entrepreneurship #businessbook #futurebusiness #smallbusiness #technologyindustry #businessbook #businessopportunity #businessdevelopment #businessstrade Formic Acid Manufacturing Plant, new small scale ideas in Formic Acid processing industry, Process technology books, Business consultancy, Business consultant, Project identification and selection, Preparation of Project Profiles, Startup Business guidance, Business guidance to clients, Startup Project for Formic Acid, Startup Project, Startup ideas, Project for startups, Startup project plan, Business start-up, Business Plan for a Startup Business, Great Opportunity for Startup, Small Start-up Business Project, Start-up Business Plan for Formic Acid, Start Up India, Stand Up India, Formic Acid Making Small Business Manufacturing, Small scale Formic Acid making machine Formic Acid production line, Formic Acid making machine factory, Modern small and cottage scale industries, Profitable small and cottage scale industries, Setting up and opening your Formic Acid Business, How to Start a Formic Acid?, How to start a successful Formic Acid business, Small scale Commercial Formic Acid making, Best small and cottage scale industries, Formic Acid Business, Profitable Small Scale Manufacturing, Feasibility Reports List, Detailed Project Reports List, Project Reports, Niir Project Consultancy Services, Business Ideas, Entrepreneur business of Formic Acid, Business Plan, Technology Book on Formic Acid, Manufacturing Business of Formic Acid, Detailed Project Report on Formic Acid, Market Research Report, Techno-Economic Feasibility Study on Formic Acid, Feasibility Report, Project Report & Profile, Project Consultancy, Startup, Small Business, Database, Technologies, Project Opportunities, Manufacturing Process, Technology Books, Business Listing, Business Books, Entrepreneur India Magazine, Small Scale Industries, Consultancy for Formic Acid, Feasibility Report, Project Report, Technology Book on Formic Acid, Business Ideas, Startup Project, Project Consultancy on Formic Acid, Niir Project Consultancy Services , Project Profile, Small Scale Industry, manufacturing business, technology on Formic Acid, Consultancy Services, Consultant for Formic Acid, Feasibility Report on Formic Acid, Production of Formic Acid, project cost, Investment Opportunities of Formic Acid, Industry Trends, Project Reports and Technology Books on Formic Acid, Industry, Market Detailed Analysis Report, Profitable business on Formic Acid
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
Add to Inquiry Add to Inquiry Basket

Manufacturing of Propylene Oxide. Investment Opportunities in Chemical Industry.

Manufacturing of Propylene Oxide. Investment Opportunities in Chemical Industry. Propylene oxide is an organic compound with the molecular formula CH3CHCH2O. This colorless volatile liquid with an odor resembling ether, is produced on a large scale industrially. Its major application is its use for the production of polyether polyols for use in making polyurethane plastics. Propylene oxide liquid and vapor are extremely flammable. Vapors may travel long distances and are heavier than air. Vapor may cause flash fire or explosion. Aqueous mixtures with propylene oxide concentrations as low as 0.75% may be flammable. Propylene oxide is used in agriculture as an insecticidal fumigant and sterilant, to control bacteria contamination, moulds contamination, insect infestations, and microbial spoilage of food products as well as to control insects in non-food products. Propylene oxide is also a commercially important industrial chemical finding application as an intermediate for a wide array of products. Propylene Oxide is a synthetic, highly-flammable, volatile, colorless liquid that is soluble in water and miscible with many organic solvents. Propylene oxide is used primarily as a chemical intermediate in the production of polyether’s and propylene glycol. It is also used as a pesticide and a fumigant for the sterilization of packaged foods and plastic medical instruments. Acute inhalation exposure to vapors of this compound can result in respiratory tract irritation, coughing, difficulty in breathing (dyspnea) and buildup of fluid in the lungs (pulmonary edema) that can possibly lead to pneumonia. Inhale high concentrations of the vapors for short time periods may cause headache, motor weakness, The purpose of this bulletin is to disseminate recent information on the potential carcinogenicity of propylene oxide. The chronic effects of this chemical in animals have produced evidence that cancer is associated with exposure to propylene oxide. This bulletin describes of those animal, presents the known human health effects of propylene oxide, and suggests guidelines for minimizing occupational exposures. Propylene oxide at room temperature is a volatile, colorless, highly flammable liquid with a sweet, ether-like odor. The odor threshold for propylene oxide vapor is reported to be 200 parts of propylene oxide per million parts of air (200 ppm) in humans. Uses ? Polyols used for the polyurethane foam (PUF) for the coatings, adhesives and sealants furniture, refrigerator, automotive industries, ? Propylene glycol ethers for the use as solvents in resins, cleaners, waxes paints, inks, and coatings ? Propylene glycols, even for the production of unsaturated polyester resins transportation, automotive, marine industries, and, construction ? Propylene glycols used as solvents in cosmetics, pharmaceuticals, food ? Propylene glycols is also used in aircraft de-icers and engine coolants ? Butanediol and its related products used for resins and solvents. ? Most propylene oxide is used as an intermediate in the production of polyether polyols for polyurethane foams, and in the production of propylene glycol for unsaturated polyester resins. ? Minor quantities are used for sterilizing medical equipment and for fumigating foodstuffs ? The major use of propylene oxide is in the production of polyether’s (the primary component of polyurethane foams) and propylene glycol. ? Propylene oxide is also used in the fumigation of foodstuffs and plastic medical instruments and in the manufacture of propylene glycol and glycol ethers, as herbicides, as solvents, and in the preparation of lubricants, surfactants, and oil demulsifies Technology Propylene oxide is traditionally made by chlorohydrin and epoxidation routes, but newer technologies based on hydrogen peroxide or cumene hydro peroxide have been commercialized. A significant amount of propylene oxide capacity is still based on the older chlorohydrin process. The plants using this route are often integrated with chlor-akali plants which consume a large amount of power in making chlorine and caustic soda. Consequently, extensive effluent treatment is needed to handle the waste stream. Another process that had once gained in popularity was the propylene oxide /styrene monomer (propylene oxide /SM) route. The disadvantage here, though, is the potential coproduction of 2.25 tonnes of styrene for every tonne of propylene oxide, which can present difficulties in balancing the markets for propylene oxide and styrene. This can lead to volatility over time in performing the operations economically. Capital costs can also be relatively high in the propylene oxide /SM route. A number of propylene oxide /SM plants have been built by companies such as Spain's Repsol, Ellba (Shell/BASF) and Netherlands-based LyondellBasell. New propylene oxide technologies without co-products have now been developed and commercialized, including a cumene hydro peroxidation technology. In addition, a number of companies have developed technologies to make propylene oxide from propylene and hydrogen peroxide a process known as HPPO. Market Outlook Global propylene oxide market is expected to show significant growth of increasing polyurethanes’ demand in various segments including packaging, automotive, footwear, furniture, and construction. Rising use of polyurethanes in sealants, thermal insulators, and flooring materials will drive industry growth over the next seven years. Rising infrastructure spending in China, Malaysia, Singapore, Brazil, India, UAE, Saudi Arabia, and Qatar is expected to drive demand over the forecast period. In addition, growing automotive sector in various countries including in China, Mexico, the U.S., and India is expected to increase market. Propylene glycol is widely deployed as a construction chemical for use in paints, grouts, adhesives, waterproofing materials, and coatings, in both infrastructure and the construction industry. A wide-ranging number of propylene glycol applications are anticipated to be an important driver of the propylene oxide market in the days ahead. Another industry that is witnessing a resurgence in recent times is the automotive industry. This should directly benefit the propylene oxide market as the products are utilized in a number of components such as flexible foams, paints, adhesives, and sealants. Thus, it can be said that the propylene oxide market is intrinsically linked to the automotive industry. Propylene is used to produce flexible foams for bedding, furniture, carpet underlay, bedding and seat cushioning in automotive while polyurethanes are used to produce rigid foams for thermal insulation in packaging & commercial refrigeration and construction industry. Toxic nature of propylene oxide, development of alternatives of oxide, negative effects of the product in the environment, and the high price of raw materials will hinder the growth of the market. Propylene oxide finds its application in tub-shower, gasoline tanks, and boat hulls. Rise in the consumption of products that include polyalkylene glycols, propylene glycols, and propylene glycol ethers will propel market expansion. High consumption in lubricants, defoamers, greases, oil-field chemicals, latex paints, wetting agents, and water scavengers will increase the revenue generated by the market. Europe was the largest in terms of Propylene Oxide consumption. However, it is anticipated that it would lose it market share due to the economic crisis and increasing environmental regulations and safety. The propylene oxide market is expected to grow at a CAGR of around 5.9% during of 2019-2024. The increasing infrastructure spending in emerging economies, like China, India, and Brazil is likely to provide opportunities. The increasing use of propylene derivative, polyurethane, in the construction industry, has widely helped the propylene oxide market to have a strong hold in the construction and infrastructure segments. Propylene oxide (CH3CHCH2O) is a colorless volatile liquid. It is an organic compound used in the production of polyether polyols, which in turn is used in the production of polyurethane plastics. Propylene oxide can be produced by hydrochorination or oxidation. Propylene oxide has various applications in automotive and construction industries. Flexible foams, paints, sealants, coolants, car seats brakes, and hydraulic fuels are components which propylene oxide in the automotive industry Also, it is used as a chemical for paints, waterproofing, coatings, adhesives, grouts, and materials. However, availability of substitutes for propylene oxide are restraining growth of the market. In the Middle East & Africa region, growing hotel construction, and public infrastructure have been driving the construction industry in the region. Besides, the residential construction is also strong in North America, due to high housing demand due to growing population demand for homes, and trend of nuclear families, which is further projected to drive the demand for propylene oxide market. Whereas, Europe has been witnessing healthy recovery of construction activities, which is expected to further increase the demand for propylene oxide in the years to come. Hence, all such trends in the global construction industry are expected to positively influence the demand for propylene oxide. Propylene oxide (PO) is a key intermediate in the chemical industry. For instance, PO is mainly used to produce polyether polyols (65%), as well as propene glycol (30%) and propene glycol ethers (4%) (The second and third largest applications, respectively) which are mainly applied to manufacture commercial products such as adhesives, solvents, and foams. The annual worldwide production of PO amounted to 8.06 million tons and will likely go beyond 9.56 million tons and this market is annually growing. Northeast Asia is forecast to remain the major source of new propylene oxide requirements. The Indian Subcontinent will benefit from an even faster demand growth rate, albeit from a much smaller base. Northeast Asia will continue to add capacity at a sustained rate: North America, Southeast Asia, the Indian Subcontinent and Western Europe are also expected to increase their capacity base, but to a much lesser extent. Overall, capacity additions are projected to be greater than consumption growth. Despite some environmental concerns in some countries (the United States, Canada, Japan), MTBE has continued to be an attractive gasoline blend stock as the global demand for octane has increased because of the growth of smaller engines and the low complexity of Chinese refineries. Nevertheless, a recent change in Chinese gasoline policy is expected to alter the MTBE market in the medium term; the country is now aiming to develop an E-10 gasoline, comprising 10% ethanol—thus requiring less MTBE. The number of new PO/TBA plants is therefore expected to gradually slow down over the next five years. There are three main routes to commercial production of propylene oxide—chlorohydrin, peroxidation (PO/SM, PO/TBA), and hydro peroxidation (HPPO and HPCU) processes. While the recent hydro peroxidation processes have gained significant momentum over the past decade, the traditional routes (chlorohydrin, peroxidation) still dominate globally. The majority of new PO production units are now designed to minimize or even avoid coproduct generation, as the marketing of coproducts has presented its own set of challenges for producers. More specifically, styrene markets had been in oversupply for quite some time, leading to limited investment into new PO/SM facilities; PO/SM investments are nevertheless now resuming as the styrene market has recovered following a decade of industry restructuring and asset rationalization. Propylene oxide belongs to the epoxide family of products, and is used principally in the manufacture of polyether polyols, propylene glycols, glycol ethers, and polyalkylene glycols. Overall, propylene oxide consumption is broadly tied to the general economy and has been increasingly linked to emerging countries (China, in particular), where improvements in living standards are driving an increasing use of a wide range of polymers and chemicals. Propylene oxide capacity has increased at an average rate of 3% per year, driven mainly by new developments in Asia. Meanwhile, Propylene oxide consumption has grown at a stronger pace (4.2% per year on average) leading to a tightening of markets and rising average operating rates across the propylene oxide industry. The industry-wide utilization rate was estimated at 93%, up from the 88% recorded five years ago. Key Players ? BASF, ? The Dow Chemical, ? Huntsman International, ? Royal Dutch Shell, ? INEOS, Balchem, ? SKC, ? Sumitomo Chemical, ? Repsol, ? LyondellBasell Industries, ? SABIC, ? Tokuyama Tags #propyleneoxide #Propylene #PropyleneOxide #toxic #polymerindustry #plasticindustry #entrepreneurship #PolymerIndustry #DetailedProjectReport #BusinessPlan #marketresearchreport #ProjectReportForBankLoan #PreFeasibilityandFeasibilityStudy #feasibilityreport #Business #businessfeasibilityreport #businessconsulting #MarketReseach #chemicalindustry #chemicalbusiness #ChemicalBusiness #industrial #BusinessHub #supportsmallbusiness #opportunities #Chemicals #FutureofChemcialIndustry #processindustry #indianchemicalindustry #chemicalindustry #chemicalbusiness #chemicalmarket #chemicalproducts #Fertilisers #electrochemistry #marketresearch Technology Profile: Propylene Oxide Production, Manufacturers of propylene oxide, Project Report on Propylene Oxide – Manufacturing, Technology Profile: Propylene Oxide Production, Propylene Oxide Manufacture Technology, Environmentally friendly way to produce propylene oxide, Feasibility Report, Project Report, Technology Book on Propylene Oxide, Business Ideas, Startup Project, Project Consultancy on Propylene Oxide, Niir Project Consultancy Services, Project Profile, Small Scale Industry, manufacturing business, technology on Propylene Oxide, Consultancy Services, Consultant for Propylene Oxide, Feasibility Report on Propylene Oxide, Production of Propylene Oxide, project cost, Investment Opportunities of Propylene Oxide, Industry Trends, Project Reports and Technology Books on Propylene Oxide, Industry, Market Detailed Analysis Report, Profitable business on Propylene Oxide, Process technology books, Business consultancy, Business consultant, Project identification and selection, Startup Project for Propylene Oxide, Startup ideas, Project for, startups, Startup project plan, Business start-up, Business Plan for a Startup Business, Great Opportunity for Startup, Small Start-up Business Project, Start-up Business Plan for Propylene Oxide, Setting up and opening your Propylene Oxide Business, Feasibility Reports List, Detailed Project Reports List, Project Reports, Business Ideas, Technology Book, Manufacturing , Business, Market Research Report, Techno-Economic Feasibility Study, Feasibility Report, Project Report & Profile, Project Consultancy, Project Opportunities, Technology Books, Consultancy for Propylene Oxide,
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
Add to Inquiry Add to Inquiry Basket

Chlorinated Paraffin Wax (CPW)

The Chlorinated Paraffins (CP) sector is major consumer of chlorine and about 12% of chlorine produced in the country is consumed by this unit. Chlorinated paraffins belong to a group of Chlorinated Hydrocarbons of straight chain lengths [CnH (2n +2)], where Carbon can be from C10 onwards. Generally, the paraffins used in manufacture of chlorinated paraffins are of C10 to C24 which corresponds to Normal and Heavy Normal Paraffins and Waxes. Chlorinated paraffin formulations are used in a wide range of industrial applications including flame retardants and plasticisers. The product functions as an additive in metal working fluids, sealants, paints and coatings. Chlorinated Paraffins Wax are straight-chain hydrocarbons that have been chlorinated. Chlorinated paraffins Wax are classified according to their carbon-chain length and percentage of chlorination, with carbon-chain lengths generally ranging from C10 to C30 and chlorination from approximately 35% to greater than 70% by weight. The global chlorinated paraffin wax market has been segmented based on application and region. Based on application, the global chlorinated paraffin wax market has been divided into lubricating additives, plastic additives, rubber, paints, metal working fluids, and others (including adhesive & sealants and fabrics). Chlorinated Paraffin Market size was estimated over USD 1.6 billion in 2016 and the industry will grow by a CAGR more than 3% up to 2024. Chlorinated paraffin wax possesses complex chemical structures that allow several positions for chlorine bond formation. Based on degree of chlorination, chlorinated paraffin wax can be divided into two classes: low chlorine content paraffin wax (less than 50% chlorination) and high chlorine content paraffin wax (more than 50% chlorination). Few Indian major players are as under: • Aditya Birla Chemicals (India) Ltd. • Ambattur Petrochem Ltd. • Faith Industries Ltd. • K L J Organic Ltd. • Synthel Paraffins (India) Ltd.
Plant capacity: Chlorinated Paraffin Wax (CPW): 40 MT per day Hydrochloric Acid (by product): 50 MT per dayPlant & machinery: 608 Lakh
Working capital: -T.C.I: Cost of Project: 1150 Lakh
Return: 25.00%Break even: 47.00%
Add to Inquiry Add to Inquiry Basket

Information
  • One Lac / Lakh / Lakhs is equivalent to one hundred thousand (100,000)
  • One Crore is equivalent to ten million (10,000,000)
  • T.C.I is Total Capital Investment
  • We can modify the project capacity and project cost as per your requirement.
  • We can also prepare project report on any subject as per your requirement.
  • Caution: The project's cost, capacity and return are subject to change without any notice. Future projects may have different values of project cost, capacity or return.

Add multiple items to inquiry
Select the items and then press Add to inquiry button

Page 62 of 76 | Total 755 projects in this category
« Previous   Page 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 .... 62 75 76   Next »

About NIIR PROJECT CONSULTANCY SERVICES

Hide »

NIIR PROJECT CONSULTANCY SERVICES (NPCS) is a reliable name in the industrial world for offering integrated technical consultancy services. NPCS is manned by engineers, planners, specialists, financial experts, economic analysts and design specialists with extensive experience in the related industries.

Our various services are: Detailed Project Report, Business Plan for Manufacturing Plant, Start-up Ideas, Business Ideas for Entrepreneurs, Start up Business Opportunities, entrepreneurship projects, Successful Business Plan, Industry Trends, Market Research, Manufacturing Process, Machinery, Raw Materials, project report, Cost and Revenue, Pre-feasibility study for Profitable Manufacturing Business, Project Identification, Project Feasibility and Market Study, Identification of Profitable Industrial Project Opportunities, Business Opportunities, Investment Opportunities for Most Profitable Business in India, Manufacturing Business Ideas, Preparation of Project Profile, Pre-Investment and Pre-Feasibility Study, Market Research Study, Preparation of Techno-Economic Feasibility Report, Identification and Selection of Plant, Process, Equipment, General Guidance, Startup Help, Technical and Commercial Counseling for setting up new industrial project and Most Profitable Small Scale Business.

NPCS also publishes varies process technology, technical, reference, self employment and startup books, directory, business and industry database, bankable detailed project report, market research report on various industries, small scale industry and profit making business. Besides being used by manufacturers, industrialists and entrepreneurs, our publications are also used by professionals including project engineers, information services bureau, consultants and project consultancy firms as one of the input in their research.

^ Top